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Mechanical Vibration by Palm III

Description: About this productProduct IdentifiersPublisherWiley & Sons, Incorporated, JohnISBN-100471345555ISBN-139780471345558eBay Product ID (ePID)48655626Product Key FeaturesNumber of Pages736 PagesPublication NameMechanical VibrationLanguageEnglishSubjectWaves & Wave Mechanics, Mechanics / General, MechanicalPublication Year2006TypeTextbookSubject AreaTechnology & Engineering, ScienceAuthorWilliam J. Palm IIIFormatHardcoverDimensionsItem Height1.6 inItem Weight55.3 OzItem Length10.1 inItem Width8.3 inAdditional Product FeaturesEdition Number2Intended AudienceCollege AudienceLCCN2005-058117Dewey Edition22IllustratedYesDewey Decimal620.3Table Of ContentChapter 1. Introduction to Mechanical Vibration. Chapter 2. Models with One Degree of Freedom. Chapter 3. Free Response with a Single Degree of Freedom. Chapter 4. Harmonic Response with a Single Degree of Freedom. Chapter 5. General Forced Response. Chapter 6. Two-Degree of Freedom Systems. Chapter 7. Vibration Suppression and Control. Chapter 8. Matrix Methods for Multi-Degree of Freedom Systems. Chapter 9. Vibration Measurement and Testing. Chapter 10. Distributed Systems. Chapter 11. Dynamic Finite Element Analysis. Appendix A: Introduction to MATLAB. Appendix B: Numerical Solution Methods. Appendix C: Mechanical Properties of Common Metals.SynopsisIntended as an introduction to mechanical vibration, William Palm's text is designed for courses typically offered in the junior or senior year in mechanical engineering, aerospace engineering, or engineering mechanics curricula. Common applications of the subject include vehicle suspension systems and vibration isolators and absorbers designed to minimize the effects of vibration on people and machines. Prerequisite subject is dynamics, and Mechanical Vibration provides many examples of deriving vibration models from dynamics principles. The first seven chapters form the core text material. One or more of the remaining four chapters may be covered, depending on the time available and on the emphasis desired by the instructor. Because MATLAB is now the standard applications language used in engineering curricula, this language is emphasized in the text, via separate sections at the end of chapter. In addition, Simulink, which provides a graphical user interface that is often much easier to use than traditional command-line programs, is covered in the text. This is the only vibration text to cover Simulink, and most chapters have a separate section devoted to the Simulink features relevant to the chapter., Model, analyze, and solve vibration problems, using modern computer tools. Featuring clear explanations, worked examples, applications, and modern computer tools, William Palms Mechanical Vibration provides a firm foundation in vibratory systems. Youll learn how to apply knowledge of mathematics and science to model and analyze systems ranging from a single degree of freedom to complex systems with two and more degrees of freedom. Separate MATLAB sections at the end of most chapters show how to use the most recent features of this standard engineering tool, in the context of solving vibration problems. The text introduces Simulink where solutions may be difficult to program in MATLAB, such as modeling Coulomb friction effects and simulating systems that contain non-linearities. Ample problems throughout the text provide opportunities to practice identifying, formulating, and solving vibration problems. KEY FEATURES Strong pedagogical approach, including chapter objectives and summaries Extensive worked examples illustrating applications Numerous realistic homework problems Up-to-date MATLAB coverage The first vibration textbook to cover Simulink Self-contained introduction to MATLAB in Appendix A Special section dealing with active vibration control in sports equipment Special sections devoted to obtaining parameter values from experimental data, Building on the success of Modeling, Analysis, and Control of Dynamic Systems, 2/e, William Palms new book offers a concise introduction to vibrations theory and applications. Design problems give readers the opportunity to apply what theyve learned. Case studies illustrate practical engineering applications. Extensive coverage of MATLAB., Model, analyze, and solve vibration problems, using modern computer tools. Featuring clear explanations, worked examples, applications, and modern computer tools, William Palm's Mechanical Vibration provides a firm foundation in vibratory systems. You'll learn how to apply knowledge of mathematics and science to model and analyze systems ranging from a single degree of freedom to complex systems with two and more degrees of freedom. Separate MATLAB sections at the end of most chapters show how to use the most recent features of this standard engineering tool, in the context of solving vibration problems. The text introduces Simulink where solutions may be difficult to program in MATLAB, such as modeling Coulomb friction effects and simulating systems that contain non-linearities. Ample problems throughout the text provide opportunities to practice identifying, formulating, and solving vibration problems. Key Features * Strong pedagogical approach, including chapter objectives and summaries * Extensive worked examples illustrating applications * Numerous realistic homework problems * Up-to-date MATLAB coverage * The first vibration textbook to cover Simulink * Self-contained introduction to MATLAB in Appendix A * Special section dealing with active vibration control in sports equipment * Special sections devoted to obtaining parameter values from experimental dataLC Classification NumberTA355.P25 2006

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Book Title: Mechanical Vibration

Topic: Civil & Environmental

Narrative Type: Civil & Environmental

Genre: N/A

Intended Audience: N/A

Number of Pages: 736 Pages

Language: English

Publication Name: Mechanical Vibration

Publisher: Wiley & Sons, Incorporated, John

Item Height: 1.6 in

Publication Year: 2006

Subject: Waves & Wave Mechanics, Mechanics / General, Mechanical

Item Weight: 55.3 Oz

Type: Textbook

Item Length: 10.1 in

Author: William J. Palm III

Subject Area: Technology & Engineering, Science

Item Width: 8.3 in

Format: Hardcover

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